US10697766B1

Method and apparatus for compensating vehicle inspection system measurements for effects of vehicle motion

Summary by NHIP

Vehicle motion compensation system

The system uses two displacement sensors on opposite sides of a lane to measure moving vehicle wheels. A processor applies speed and driver-based compensation factors to dynamic alignment data before comparing it to static specifications.

Claim Score by NHIP

Read claim 9, the broadest

Abstract

A vehicle inspection system configured with a processing system and at least one displacement sensor disposed on opposite sides of a vehicle inspection lane sensor region to acquire displacement measurement data associated with a moving vehicle passing through the vehicle inspection lane. The processing system is configured to receive acquired displacement measurement data to determine characteristics of the moving vehicle, such as vehicle velocity, dynamic axle alignment, dynamic wheel alignment, or dimensions. The processing system is further configured to evaluate the determined dynamic vehicle characteristics in relation to static vehicle characteristics, such as static axle alignment or static wheel alignment, through application of one or more compensation factors based on user selected parameters, default parameters, or identified vehicle features.

US10697766B1, drawing sheet 1
Sheet 1 of 6

Term

10.1 yearsleft in the term

Expires 1 November 2036, including 347 days of term adjustment.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

17 claims: 2 independent, 15 dependent

  1. 1
    A vehicle inspection system, comprising:a first displacement sensor assembly disposed on one longitudinal side of a vehicle inspection lane through which a vehicle undergoing inspection moves in a longitudinal direction, said first displacement sensor assembly oriented to acquire displacement measurements associated with at least one wheel assembly on a first lateral side of the moving vehicle;a second displacement sensor assembly disposed on an opposite longitudinal side of said vehicle inspection lane, said second displacement sensor assembly oriented to acquire displacement measurements associated with at least one wheel assembly on a second lateral side of the moving vehicle;a processing system configured to receive displacement measurement data from said first and second displacement sensor assemblies, said processing system further configured with software instructions toa) evaluate said received displacement measurement data to determine a value for at least one dynamic vehicle characteristic, wherein said dynamic vehicle characteristic is affected by at least one of (i) the vehicle's speed, and (ii) a presence of a driver within said vehicle;b) apply at least one compensation factor, offset, correction value, or formula to said determined value of said at least one dynamic vehicle characteristic to adjust said determined value for an effect of said vehicle's speed and/or a driver presence within said vehicle;andc) compare said at least one adjusted value with a specification value for said characteristic on a static vehicle at rest to produce an output to a user, report, or data storage system.
  2. 9
    Broadest claimClaim Score 41, average(NHIP)A vehicle inspection method, comprising:moving a vehicle through a vehicle inspection lane once;acquiring, during said movement through said inspection lane, a plurality of displacement measurements to surfaces on a first side of said vehicle from a first displacement sensor assembly disposed on one longitudinal side of a vehicle inspection lane and to surfaces on an opposite side of said vehicle from a second displacement sensor assembly disposed on an opposite longitudinal side of said vehicle inspection lane, said plurality of displacement measurements including displacement measurements acquired from surfaces of rolling wheel assemblies on each side of said vehicle;evaluating said acquired displacement measurements to determine a value representative of at least one vehicle characteristic;compensating said at least one determined value to adjust for a change in said vehicle characteristic associated with said movement of said vehicle;andcomparing each compensated value with a specification value for said characteristic of a stationary vehicle for output to a user, report, or data storage system.